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Indigenously associated methanogens intensified the metabolism in hydrogenosomes of anaerobic fungi with xylose as substrate

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논문

Indigenously associated methanogens intensified the metabolism in hydrogenosomes of anaerobic fungi with xylose as substrate

학술지

Journal of basic microbiology

저자명

Li, Yuanfei; Jin, Wei; Mu, Chunlong; Cheng, Yanfen; Zhu, Weiyun

초록

<P>Anaerobic fungi are potent lignocellulose degraders, but have not yet been exploited in this capacity, largely owing to their poor metabolic characterization. In the current study, a time course of fermentation was conducted to study the effect of the co&#8208;cultured methanogens on xylose metabolism by anaerobic fungi. The fermentation end&#8208;products from anaerobic fungal monoculture were H<SUB>2</SUB> (6.7 ml), CO<SUB>2</SUB> (65.7 ml), formate (17.90 mM), acetate (9.00 mM), lactate (11.89 mM), ethanol, and malate after 96 h fermentation. Compared to the monoculture, the end&#8208;products of co&#8208;culture shifted to more CO<SUB>2</SUB> (71.8 ml) and acetate (15.20 mM), methane (14.9 ml), less lactate (5.28 mM), and hardly detectable formate and H<SUB>2</SUB> at the end of fermentation. After 48 h, accumulated formate was remarkably consumed by co&#8208;cultured methanogens, accompanied by significantly increased acetate, CO<SUB>2</SUB> and pH, and decreased lactate and malate. Xylose utilization, in both cultures, was similar during fermentation. However, the relative flux of carbon in hydrogenosomes in the co&#8208;culture was higher than that in the monoculture. In conclusion, the co&#8208;culture with methanogens enhanced &ldquo;energy yields&rdquo; of anaerobic fungi by removing the accumulated formate, decreased the metabolism in cytosol, for example, the lactate pathway, and increased the metabolism in hydrogenosomes, for example, the acetate pathway.</P>

발행연도

2017

ISSN

0233-111x

ISSN

1521-4028

57

11

페이지

pp.933-940

주제어

anaerobic fungus; co&#x2010; culture; fermentation metabolites; methanogen; xylose utilization;

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1 2023-12-11
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논문; 2017-08-09

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